超高强,ultra-high strength
1)ultra-high strength超高强
1.Research on ultra-high strength and high wear resisting concrete material with iron slag;铁质渣球超高强高耐磨混凝土材料的研究
2.Through the design of C-Si-Mn-Cr and C-Si-Mn-Cr-Mo alloy system,it was developed two kinds of strength of more than 1000MPa,elongation of more than 10%of ultra-high strength cold-rolled dual-phase steels.通过设计C-Si-Mn-Cr(Mo)两种合金系在实验室开发出抗拉强度在980MPa以上,伸长率在10%以上的超高强冷轧双相钢。
3.With the adoption of sintered bauxite,silica sand and black silicon carbide respectively as the concrete aggregate,high quality silica fume,quartz powder,high-performance water reducer and steel fiber are used to prepare ultra-high strength and high wear-resistant concrete.分别采用烧结铝矾土、石英砂和黑碳化硅作为混凝土骨料,选用优质硅灰、石英粉、高效减水剂、钢纤维等,制备了超高强高耐磨的混凝土。
英文短句/例句

1.ultra high strength high-modulus fibre超高强度高模量纤维
2.The Study on Process of Improving Strength and Toughness of 40CrNi2S12MoVA Steel;超高强度钢40CrNi2Si2MoVA强韧化工艺研究
3.Research on Improving Fracture Toughness of Corrosion Resistanced Ultrahigh-Strength Steel;提高耐蚀超高强度钢断裂韧性的研究
4.Investigation of super high-strength and high performance concrete containing low active slag低活性渣体超高强高性能混凝土研究
5.A new mix proportion design method of ultra-high strength high performance concrete超高强高性能混凝土配合比设计方法
6.Study on New High Strength and Super High Strength TRIP Steels;高强度和超高强度相变塑性钢的开发和研究
7.Analysis of Strengthening Precipitates of High Co-Ni Ultra-high Strength Steel高Co-Ni超高强度钢强化析出相的微观分析
8.INFLUENCE OF SUPER-FINE SUBSTRUCTURE ON TOUGHNESS OF LOW-ALLOYING ULTRA-HIGH STRENGTH STRUCTURE STEEL低合金超高强度钢亚结构超细化对韧性的影响
9.Analysis of Cracking During Stamping of 700MPa Grade Super High Strength Beam Steel屈服强度700MPa级超高强度大梁钢冲压开裂分析
10.ultra-high tensile steel超高强度钢(拉断应力大于100吨/英寸)
11.Water Quenching and Tempering Technology Research of 1000MPa Ultra-High Strength Dual-Phase Steel;1000MPa超高强双相钢水淬及回火工艺研究
12.THE ENERGY SPECTRA OF COSMIC RAY HADRONS AT MT.KAMBALA 5500m ABOVE SE LEVEL高山5500米超高能宇宙线强子的能谱
13.Development of Grade V150 Casing with High Strength and High Toughness for Ultra-deep Well Service超深井用V150级高强高韧套管开发
14.Development of High Strength and High Efficiency Iron Powder Electrode with Ultra-low Hydrogen高强度高效率超低氢铁粉焊条的研制
15.Study on SFEC Code-Type for High-Speed Ultra Long-Haul Opitcal Communication Systems;高速超长距离光通信系统中超强FEC码型的研究
16.Experimental Studies on High-energy Particles Produced during the Interaction of Ultrashort Ultra-intense Laser Pulse with Plasma;超短超强激光—等离子体中高能粒子的实验研究
17.Hot Electron Acceleration in the Process of Ultra-intense and Ultra-short Laser Plasmas Interaction;超强超短脉冲激光—等离子体中高能电子的加速
18.Research on New Techniques of Superfine Grinding for Superhard Powder by High Vibration Intensity超硬粉体超微粉碎的高振强振动磨技术研究
相关短句/例句

ultra high strength超高强
1.Microstructures of ultra high strength aluminum alloys;超高强铝合金的显微组织
2.In this paper the ultra high strength cement based composites were investigated using ordinary materials with normal mixing method.采用常规原材料 ,普通成型工艺 ,通过正交设计试验研究 ,配制出了抗压强度为 1 2 0 MPa的超高强水泥基材料 ,并给出了优选配比。
3)ultrahigh-strength超高强
1.Mechanical properties of 7055 ultrahigh-strength and ultrahigh-ductility aluminum alloy;7055超高强、超高韧铝合金力学性能分析
2.Study of heat treatment scheme of ultrahigh-strength,ultrahigh-ductility aluminum alloy;超高强超高韧铝合金的热处理工艺研究
4)ultrahigh strength超高强
1.With its excellent performance which can be compared with or even surpass that of metals and organic macromolecule material, ultrahigh strength cement-based compound material, the lowest energy-consuming inorganic non.超高强水泥基复合材料是80年代发展起来的一种新材料。
5)high-intensity ultrasonic高强超声
1.Mg-Zn-Er alloy was prepared by high-intensity ultrasonic melt treatment.采用高强超声熔体处理法制备Mg-Zn-Er合金,研究了超声处理时间和超声输出功率对镁合金铸态显微组织和性能的影响。
6)super strength超高强度
1.This paper analyzes the material mechanical properties of domestic new alloy steel 38SiMnVBE with high cost performance and super strength,and the material mechanical properties of foreign typical high performance alloy structure steels,as well as their applications in automotive components and parts.分析了高性价比、超高强度38SiM nVBE合金结构钢和国外典型高性能合金结构钢的材料力学性能,以及在汽车零部件上的应用现状,探讨了其今后在汽车传动零件上应用的可能性。
延伸阅读

超高强钛合金分子式:CAS号:性质:室温拉伸强度超过1400MPa的钛合金。目前这类合金还处于发展阶段,如美国波音公司的研究指标为:室温拉伸强度≥1500MPa;剪切强度≥860MPa;伸长率≥8%;加载应力等于45%室温拉伸强度时的疲劳循环次数不少于10万次;断裂韧性和屈服强度的比值与4340M超高强度钢相当。比较有发展前途的是Ti8V5FelAl亚稳定β钛合金,其典型的力学性能已达到室温拉伸强度为1480MPa;伸长率为8%。